Identification of the Arabidopsis thaliana flavonoid 3'-hydroxylase gene and functional expression of the encoded P450 enzyme
Schoenbohm C, Martens S, Eder C, Forkmann G, Weisshaar B (2000)
Biological Chemistry 381(8): 749-753.
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Autor*in
Schoenbohm, C.;
Martens, S.;
Eder, C.;
Forkmann, G.;
Weisshaar, BerndUniBi
Abstract / Bemerkung
The phenylpropanoid pathway results in the synthesis of thousands of compounds, including flavonoids like flavonols, anthocyanidins and tannins. In Arabidopsis thaliana, the lack of tannins in the seed coat (testa) causes the transparent testa (tt) phenotype. In the present study, we identified the gene responsible for the tt7 mutation. We show that TT7 encodes the enzyme flavonoid 3'-hydroxylase (F3'H), and demonstrate that this P450-dependent monooxygenase has F3'H activity. The availability of the AtF3'H gene and promoter sequence will allow us to study the coregulation of a complete set of flavonol and anthocyanidin biosynthesis genes in A. thaliana, and makes in vitro synthesis of hydroxylated flavonoids more feasible.
Erscheinungsjahr
2000
Zeitschriftentitel
Biological Chemistry
Band
381
Ausgabe
8
Seite(n)
749-753
ISSN
1431-6730
Page URI
https://pub.uni-bielefeld.de/record/1867920
Zitieren
Schoenbohm C, Martens S, Eder C, Forkmann G, Weisshaar B. Identification of the Arabidopsis thaliana flavonoid 3'-hydroxylase gene and functional expression of the encoded P450 enzyme. Biological Chemistry. 2000;381(8):749-753.
Schoenbohm, C., Martens, S., Eder, C., Forkmann, G., & Weisshaar, B. (2000). Identification of the Arabidopsis thaliana flavonoid 3'-hydroxylase gene and functional expression of the encoded P450 enzyme. Biological Chemistry, 381(8), 749-753. https://doi.org/10.1515/BC.2000.095
Schoenbohm, C., Martens, S., Eder, C., Forkmann, G., and Weisshaar, Bernd. 2000. “Identification of the Arabidopsis thaliana flavonoid 3'-hydroxylase gene and functional expression of the encoded P450 enzyme”. Biological Chemistry 381 (8): 749-753.
Schoenbohm, C., Martens, S., Eder, C., Forkmann, G., and Weisshaar, B. (2000). Identification of the Arabidopsis thaliana flavonoid 3'-hydroxylase gene and functional expression of the encoded P450 enzyme. Biological Chemistry 381, 749-753.
Schoenbohm, C., et al., 2000. Identification of the Arabidopsis thaliana flavonoid 3'-hydroxylase gene and functional expression of the encoded P450 enzyme. Biological Chemistry, 381(8), p 749-753.
C. Schoenbohm, et al., “Identification of the Arabidopsis thaliana flavonoid 3'-hydroxylase gene and functional expression of the encoded P450 enzyme”, Biological Chemistry, vol. 381, 2000, pp. 749-753.
Schoenbohm, C., Martens, S., Eder, C., Forkmann, G., Weisshaar, B.: Identification of the Arabidopsis thaliana flavonoid 3'-hydroxylase gene and functional expression of the encoded P450 enzyme. Biological Chemistry. 381, 749-753 (2000).
Schoenbohm, C., Martens, S., Eder, C., Forkmann, G., and Weisshaar, Bernd. “Identification of the Arabidopsis thaliana flavonoid 3'-hydroxylase gene and functional expression of the encoded P450 enzyme”. Biological Chemistry 381.8 (2000): 749-753.
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Tt7 mutant flavonoid 3'-hydroxylase (UNIPROT: Q9M536)
Organism: Arabidopsis thaliana
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Organism: Arabidopsis thaliana
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Flavonoid 3'-monooxygenase (UNIPROT: Q9SD85)
Organism: Arabidopsis thaliana
Download in FASTA format
Organism: Arabidopsis thaliana
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Differential combinatorial interactions of cis-acting elements recognized by R2R3-MYB, BZIP, and BHLH factors control light-responsive and tissue-specific activation of phenylpropanoid biosynthesis genes.
Hartmann U, Sagasser M, Mehrtens F, Stracke R, Weisshaar B., Plant Mol Biol 57(2), 2005
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Xie DY, Dixon RA., Phytochemistry 66(18), 2005
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Investigation of two distinct flavone synthases for plant-specific flavone biosynthesis in Saccharomyces cerevisiae.
Leonard E, Yan Y, Lim KH, Koffas MA., Appl Environ Microbiol 71(12), 2005
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Boddu J, Svabek C, Sekhon R, Gevens A, Nicholson RL, Jones AD, Pedersen JF, Gustine DL, Chopra S., Physiol Mol Plant Pathol 65(2), 2004
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Schuler MA, Werck-Reichhart D., Annu Rev Plant Biol 54(), 2003
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Cloning of the pleiotropic T locus in soybean and two recessive alleles that differentially affect structure and expression of the encoded flavonoid 3' hydroxylase.
Zabala G, Vodkin L., Genetics 163(1), 2003
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Spontaneous mutations of the flavonoid 3'-hydroxylase gene conferring reddish flowers in the three morning glory species.
Hoshino A, Morita Y, Choi JD, Saito N, Toki K, Tanaka Y, Iida S., Plant Cell Physiol 44(10), 2003
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A. thaliana TRANSPARENT TESTA 1 is involved in seed coat development and defines the WIP subfamily of plant zinc finger proteins.
Sagasser M, Lu GH, Hahlbrock K, Weisshaar B., Genes Dev 16(1), 2002
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A single-base deletion in soybean flavonoid 3'-hydroxylase gene is associated with gray pubescence color.
Toda K, Yang D, Yamanaka N, Watanabe S, Harada K, Takahashi R., Plant Mol Biol 50(2), 2002
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The TRANSPARENT TESTA16 locus encodes the ARABIDOPSIS BSISTER MADS domain protein and is required for proper development and pigmentation of the seed coat.
Nesi N, Debeaujon I, Jond C, Stewart AJ, Jenkins GI, Caboche M, Lepiniec L., Plant Cell 14(10), 2002
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Heterologous expression of dihydroflavonol 4-reductases from various plants.
Martens S, Teeri T, Forkmann G., FEBS Lett 531(3), 2002
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Martens S, Teeri T, Forkmann G., FEBS Lett 531(3), 2002
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The TRANSPARENT TESTA12 gene of Arabidopsis encodes a multidrug secondary transporter-like protein required for flavonoid sequestration in vacuoles of the seed coat endothelium.
Debeaujon I, Peeters AJ, Léon-Kloosterziel KM, Koornneef M., Plant Cell 13(4), 2001
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Saslowsky D, Winkel-Shirley B., Plant J 27(1), 2001
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The Arabidopsis TT2 gene encodes an R2R3 MYB domain protein that acts as a key determinant for proanthocyanidin accumulation in developing seed.
Nesi N, Jond C, Debeaujon I, Caboche M, Lepiniec L., Plant Cell 13(9), 2001
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Functional conservation of plant secondary metabolic enzymes revealed by complementation of Arabidopsis flavonoid mutants with maize genes.
Dong X, Braun EL, Grotewold E., Plant Physiol 127(1), 2001
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Differential expression of two cytochrome P450s involved in the biosynthesis of flavones and anthocyanins in chemo-varietal forms of Perilla frutescens.
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